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Online since: February 2008
Authors: Michael Ott, Andreas Volek, Matthias Göken, Paul Heinz, Markus Dinkel, Florian Pyczak, Ernst Affeldt, Andreas Vossberg, Robert F. Singer
.: Engineering Failure Analysis, Vol. 12 p. 237-247. (2005) [3] Singer, R.F.
Advanced materials and processes for land-based gas turbines.
Materials for Advanced Power Engineering, Liege, Belgium (1994) [4] Duvall, D.S., W.A.
Lai: Scipta Materialia, Vol. 34(5) p. 763-769 (1996) [11] Li, T., et al., Experimental study of the high temperature mechanical behaviours of TLP bonding of two Ni-base single crystals, in Advances In Fracture And Strength, Pts Vol. 1- 4.
Tangri: Journal of Materials Science, Vol. 28 p. 823-829 (1993) [13] Choi, W., et al.: Materials Science Forum, Vol. 449-452 p. 133-136 (2004) [14] Giamei, A.F. and D.L.
Online since: July 2019
Authors: Michael Schneider, Jens P. Konrath, Laura Stöber, Florian Patocka, Ulrich Schmid
Introduction Due to outstanding material properties, silicon carbide (SiC) is a perfect candidate for high power, high temperature and high frequency electronics [1] and therefore an often selected material for advanced Schottky diodes.
Similar trends have been reported before, which were explained by using an advanced approach compared to Eq. 1, which models the diode current taking locally varying barrier heights into account [18].
References [1] Levinshtein, M.E., et al., Properties of Advanced Semiconductor Materials: GaN, AIN, InN, BN, SiC, SiGe, Wiley, New York, 2001
[4] Stöber, L., et al., Impact of contact material deposition technique on the properties of Ti/4H-SiC Schottky structures, in Materials Science Forum. 2016. p. 569-572
[17] Tung, R.T., Materials Science and Engineering: R: Reports 35 (2001) 1-138
Online since: February 2018
Authors: Woo Seong Che, B. Srinivas, Muralimohan Cheepu, Devuri Venkateswarulu, Suresh Alapati, T. Ramachandraiah, Sangathoti Haribabu, Sivaji Karna
Venkateswarulu5,e, Sivaji Karna6,f, Suresh Alapati1,g, and Woo Seong Che1,h 1Department of Mechatronics Engineering, Kyungsung University, Busan 48434, Republic of Korea 2Department of Mechanical Engineering, Sri Venkatesa Perumal College of Engineering and Technology Puttur 517583, Andhra Pradesh, India 3Senior Engineer, Department of Research and Development, D&H Secheron Electrodes Pvt.
Limited, Madhya Pradesh 452006, India 4Department of Mechanical Engineering, MVGR College of Engineering, Andhra Pradesh 535005, India 5Department of Mechanical Engineering, Marri Laxman Reddy Institute of Technology and Management, Telangana 500043, India 6Defence Research and Development Laboratory, Telangana 500058, India amuralicheepu@gmail.com, bharibab204513@gmail.com, cchandramech05@gmail.com, dbadari.srinivas@gmail.com, edvriitr@gmail.com, fkarnaauce@gmail.com, gsureshalapatimech@gmail.com, hwsche@ks.ac.kr Keywords: Accumulative roll bonding, magnesium, aluminum, mechanical properties, interface.
Most recently extensive studies and its usage on composed of magnesium rapidly increased in many advanced countries [3].
Forum. 710 (2012) 620–625
Seshabhattar (Eds.), Techno-Societal 2016, International Conference on Advanced Technologies for Societal Applications, ICATSA 2016, Springer, Cham, 2018, pp 709-717. https://doi.org/10.1007/978-3-319-53556-2_73 [17] J.A.D.
Online since: January 2021
Authors: Carlos Roberto Grandini, Pedro Akira Bazaglia Kuroda, Fernanda de Freitas Quadros, Mycaela Vieira Nascimento
Chen, A Review on Biomedical Titanium Alloys: Recent Progress and Prospect, Advanced Engineering Materials 21 (2019) 1801215
Singh, Review on titanium and titanium based alloys as biomaterials for orthopaedic applications, Materials Science and Engineering: C 102 (2019) 844-862
Yang, A Review on High-Strength Titanium Alloys: Microstructure, Strengthening, and Properties, Advanced Engineering Materials 21 (2019) 1801359
Kobayashi, Effects of [omega]-phase precipitation on [beta]-->[alpha], [alpha]'' transformations in a metastable [beta] titanium alloy, Materials Science and Engineering A 312 (2001) 182-188
Ho, Effect of Omega Phase on Mechanical Properties of Ti-Mo Alloys for Biomedical Applications, Journal of Medical and Biological Engineering 28 (2008) 47-51
Online since: October 2011
Authors: Rui Zhu Zhang, Quan Cai Li, Jin Mei Wu, Lu Ke Li
Combustions synthesis of advanced materials: part I. reaction parameters.
Journal Of Ordnance Engineering College Vol. 14,2 (2002), p. 1 [4] Zhao Z M, Ye M H, Du X K, et al.Technologies of synthesizing SHS ceramic-lined pipes an ceramic densification.
Mater Sci Forum Vol. 2, (2004), p. 127 [7] Zhang R Z, Guo Z M, Jia C C, et al.
Online since: December 2010
Authors: Georgy I. Raab, Farid Z. Utyashev
Utyashev2,b 1Institute of Physics of Advanced Materials, Ufa State Aviation Technical University, Russia 2 Institute for Metals Superplasticity Problems RAS, Ufa, Russia a giraab@mail.ru, bufz1947@mail.ru Keywords: severe plastic deformation, specific deformation zone area, high-strength nanotitanium for medicine.
It is important that in development of technological SPD processes and assessment of their efficiency the developed and established equation dependencies were applied that can be used in engineering practice. 2.
Forum, 2008, Vol. 584-586. pp. 80-85
Online since: May 2012
Authors: Nima Naderi, Md. Roslan Hashim
Beldjilali, Materials Science and Engineering B: Solid-State Materials for Advanced Technology, 138 (2007) 293-297
Williams, Materials Science Forum 600-603 (2009) 739-742
Online since: March 2010
Authors: Jia You Wang, C.H. He, F. Yang, W.H. Li
Yang Jiangsu Provincial Key Laboratory of Advanced Welding Technology School of Materials Science and Engineering, Jiangsu University of Science & Technology 2 Mengxi Road, Zhenjiang City, Jiangsu 212003, P.R.
Yang: Mater Sci Forum Vols. 628-629 (2009), p. 721-726 [5] J.
Online since: March 2004
Authors: Dong Nyung Lee
Citation & Copyright (to be inserted by the publisher ) Asymmetric Rolling as Means of Texture and Ridging Control and Grain Refinement of Aluminum Alloy and Steel Sheets Dong Nyung Lee Research Institute of Advanced Materials and School of Materials Science and Engineering Seoul National University, Seoul 151-744, Korea Keywords: Asymmetric rolling, texture, ridging, grain refinement, aluminum alloys, steel Abstract.
Forum.
Online since: December 2013
Authors: F. Kali-Ali, M. Azzaz, L. Faghi, S. Triaa
Advanced Powder Technology, 23 (2012) 580–582 [4] A.
Materials Science and Engineering, A445-446 (2007) 135-140 [13] F.
Materials Science Forum, 584-586 (2008) 977-981